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Permanent-magnetic bias outer rotor radial magnetic bearing

A technology of permanent magnet bias and magnetic bearing, applied in the direction of bearing, shaft and bearing, shaft, etc., can solve the problems of large rotor eddy current loss, multiple magnetomotive force, small size and light weight, etc., to reduce magnetic density fluctuation, avoid Coupling, the effect of reducing rotational power consumption

Active Publication Date: 2012-05-16
北京奇峰聚能科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In some structures, the permanent magnets are directly connected to the stator laminated iron core, so that the magnetic circuit of the permanent magnets will lose too much magnetomotive force when passing through the stator iron core vertically, thus greatly weakening the attraction force of the permanent magnets to the rotor shaft. In some structures The permanent magnet is connected to the laminated iron core through the magnetic ring, and the electric excitation forms a circuit through the laminated iron core. The Chinese patent application number: 200510011270.3 and 20051001169.1 structure of the permanent magnet deflection outer rotor radial magnetic bearing, such as figure 1 and figure 2 As shown, the magnetomotive force of the permanent magnet will not be lost in the laminated iron core, and the electric excitation magnetic circuit will not pass through the permanent magnet itself. The purpose of small size and light weight required by spacecraft such as space stations
In the patented radial magnetic bearing of a permanent magnet bias outer rotor (Chinese patent application number: 200710065050.8), although the structure can achieve the purpose of small axial volume, due to the magnetic density of the air gap magnetic field in the circumferential direction Therefore, it will cause a large eddy current loss when the rotor rotates at high speed, and it is difficult to meet the requirements of aerospace for power consumption

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  • Permanent-magnetic bias outer rotor radial magnetic bearing
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  • Permanent-magnetic bias outer rotor radial magnetic bearing

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Embodiment Construction

[0013] The technical scheme of the present invention is described in detail below in conjunction with accompanying drawing:

[0014] A permanent magnet bias inner rotor radial magnetic bearing, the magnetic bearing includes an inner conductive magnet, a stator core, a rotor core, an outer magnetic conductive ring, an outer magnetic isolation ring, a permanent magnet, an inner isolation magnet, an excitation coil, and Composed of an air gap and a second air gap, a certain air gap is left between the inner surface of the rotor core and the outer surface of the stator core to form the first air gap 317, and the stator core includes stator core I302, stator core II311 , stator core III315, rotor core includes rotor core I304, rotor core II306, rotor core III308 and rotor core IV310, outer magnetic ring includes outer magnetic ring I305 and outer magnetic ring II309, inner magnetic body Including right magnet guide 301, left magnet guide 312 and middle guide magnet 314, permanent m...

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Abstract

The invention provides a permanent-magnetic bias outer rotor radial magnetic bearing, which comprises magnetizers, stator cores, rotor cores, outer magnetic conducting rings, an outer magnetic isolation ring, permanent magnets, magnetic exciting coils, a first air gap and a second air gap. The stator cores I and II form eight magnetic poles in X and Y positive-negative directions, and each magnetic pole is provided with a magnetic exciting coil; the magnetizers are inside the stator cores, and the magnetizers are separated by a magnetic isolation material; the rotor cores I and IV are arranged outside the stator cores I and II; the rotor core II, the rotor core III and the outer magnetic isolation ring are arranged outside the stator core III; the rotor cores I and II are connected through the outer magnetic conducting ring; the rotor cores III and IV are connected through the outer magnetic conducting ring II; the outer magnetic conducting ring I and the rotor core II are connected with the outer magnetic conducting ring II and the rotor core III through the outer magnetic isolation ring; the right magnetizer is connected with the middle magnetizer through the permanent magnet I, and the left magnetizer is connected with the middle magnetizer through the permanent magnet II; and the magnetic poles of the stator cores are in a pole shoe form to reduce the rotating power consumption.

Description

technical field [0001] The invention relates to a non-contact hybrid magnetic suspension bearing, in particular to a radial magnetic bearing of a permanent magnetic bias outer rotor, which can replace the existing magnetic bearings used in pairs and greatly shortens the axial distance. Background technique [0002] At present, magnetic suspension bearings are divided into pure electromagnetic bearings and hybrid magnetic suspension bearings with permanent magnetic bias and electromagnetic control. The former uses large current and power consumption, and hybrid magnetic suspension bearings with permanent magnetic bias and electromagnetic control. The electromagnetic field provides auxiliary adjustment. Bearing capacity, the magnetic field generated by the permanent magnet bears the main bearing capacity, which has the advantages of reducing the loss of the power amplifier, reducing the ampere-turns of the electromagnet, and reducing the volume and weight of the magnetic bearin...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): F16C32/04
CPCF16C32/0465F16C32/0487F16C2300/20
Inventor 蒋涛
Owner 北京奇峰聚能科技有限公司